Zheng Xiangrui, Xu Lan, Douglas Jack F, Xia Wenjie
Department of Mechanics, School of Aerospace Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.
Department of Aerospace Engineering, Iowa State University, Ames, Iowa 50011, USA.
Nanoscale. 2024 Sep 19;16(36):16919-16932. doi: 10.1039/d4nr02631d.
Thermoset materials often involve the addition of molecular and nanoparticle additives to alter various chemo-physical properties of importance in their ultimate applications. The resulting compositional heterogeneities can lead to either enhancement or degradation of thermoset properties, depending on the additive chemical structure and concentration. We tentatively explore this complex physical phenomenon through the consideration of a model polymeric additive to our coarse-grained (CG) thermoset investigated in previous works by simply varying the size of additive segments compared to those of polymer melt. We find that the additive modified thermoset material becomes chemically heterogeneous from additive aggregation when the additive segments become much smaller than those of the thermoset molecules, and a clear evidence is observed in the spatial distribution of local molecular stiffness estimated from Debye-Waller factor 〈〉. Despite the non-monotonic variation trends observed in dynamical and mechanical properties with decreasing additive segmental size, both the structural relaxation time and moduli (, shear modulus and bulk modulus) exhibit scaling laws with 〈〉. The present work highlights the complex role of additive size played in the dynamical and mechanical properties of thermoset polymers, which should provide a better understanding for the glass formation process of cross-linked polymer composites.
热固性材料通常需要添加分子和纳米颗粒添加剂,以改变其在最终应用中具有重要意义的各种化学物理性质。根据添加剂的化学结构和浓度,由此产生的成分不均匀性可能会导致热固性材料性能的增强或降解。我们通过考虑一种模型聚合物添加剂来初步探索这种复杂的物理现象,该添加剂用于我们之前研究的粗粒度(CG)热固性材料,通过简单地改变添加剂链段与聚合物熔体链段的大小进行研究。我们发现,当添加剂链段比热固性分子的链段小得多时,添加剂改性的热固性材料会因添加剂聚集而在化学上变得不均匀,并且从德拜-瓦勒因子〈〉估计的局部分子刚度的空间分布中可以观察到明显的证据。尽管随着添加剂链段尺寸的减小,动力学和力学性能呈现非单调变化趋势,但结构弛豫时间和模量(,剪切模量和体积模量)均与〈〉呈现标度律。本工作突出了添加剂尺寸在热固性聚合物动力学和力学性能中所起的复杂作用,这应为交联聚合物复合材料的玻璃形成过程提供更好的理解。